Two vertical-axis wind turbines (VAWTs) benefit from a power increase when placed side by side in close proximity. To study the potential of paired VAWTs for integration in wind farms, wind tunnel wake measurements of lift-driven VAWTs are compared for isolated and three counter-rotating configurations. Because the wake of an isolated VAWT is deflected, the direction of rotation significantly influences the wake of paired VAWTs. The wake of counter-rotating VAWTs where the adjacent blades move downwind, exhibits a similar length, width and replenishment as the wake of an isolated VAWT. The wake of counter-rotating VAWTs with adjacent upwind moving blades, however, significantly differs from an isolated VAWT wake. While its wake length is si...
Large eddy simulations are used to investigate mechanisms to enhance power harvesting in wind farms....
Vertical-axis wind turbines (VAWTs) in double-rotor configuration, meaning two rotors in close proxi...
Individual turbine location within a wind plant defines the flow characterisitcs experienced by a gi...
Two vertical-axis wind turbines (VAWTs) benefit from a power increase when placed side by side in cl...
Closely spaced counter-rotating vertical-axis wind turbines (VAWTs) exhibit a considerable power imp...
Despite the rising popularity of vertical axis wind turbines, or VAWTs, the wakes behind these machi...
Wake losses are a critical consideration in wind farm design. The ability to steer and deform wakes ...
We present a comprehensive set of two-dimensional (2D) unsteady Reynolds-averaged Navier-Stokes (URA...
In the light of the growing world-wide wind energy production, the optimization of wind farms has be...
AbstractIn the design process of a wind farm the aerodynamic interactions between the single turbine...
The impact of rotor setting and relative arrangement on the individual and overall power performance...
Literature suggests that cross-flow turbines (CFTs) could be suitable for off-shore wind farms becau...
In this experiment, a small scale vertical-axis wind-turbine (VAWT) is immersed in a boundary-layer ...
Large eddy simulations are used to investigate mechanisms to enhance power harvesting in wind farms....
Vertical-axis wind turbines (VAWTs) in double-rotor configuration, meaning two rotors in close proxi...
Individual turbine location within a wind plant defines the flow characterisitcs experienced by a gi...
Two vertical-axis wind turbines (VAWTs) benefit from a power increase when placed side by side in cl...
Closely spaced counter-rotating vertical-axis wind turbines (VAWTs) exhibit a considerable power imp...
Despite the rising popularity of vertical axis wind turbines, or VAWTs, the wakes behind these machi...
Wake losses are a critical consideration in wind farm design. The ability to steer and deform wakes ...
We present a comprehensive set of two-dimensional (2D) unsteady Reynolds-averaged Navier-Stokes (URA...
In the light of the growing world-wide wind energy production, the optimization of wind farms has be...
AbstractIn the design process of a wind farm the aerodynamic interactions between the single turbine...
The impact of rotor setting and relative arrangement on the individual and overall power performance...
Literature suggests that cross-flow turbines (CFTs) could be suitable for off-shore wind farms becau...
In this experiment, a small scale vertical-axis wind-turbine (VAWT) is immersed in a boundary-layer ...
Large eddy simulations are used to investigate mechanisms to enhance power harvesting in wind farms....
Vertical-axis wind turbines (VAWTs) in double-rotor configuration, meaning two rotors in close proxi...
Individual turbine location within a wind plant defines the flow characterisitcs experienced by a gi...